Droplet dynamics driven by electrowetting

被引:2
|
作者
Xiao, Ke [1 ,2 ,3 ]
Wu, Chen-Xu [1 ,2 ]
机构
[1] Xiamen Univ, Coll Phys Sci & Technol, Dept Phys, Xiamen 361005, Peoples R China
[2] Xiamen Univ, Coll Phys Sci & Technol, Fujian Prov Key Lab Soft Funct Mat Res, Xiamen 361005, Peoples R China
[3] Univ Chinese Acad Sci, Wenzhou Inst, Wenzhou 325016, Peoples R China
基金
中国国家自然科学基金;
关键词
SURFACES; LIQUIDS;
D O I
10.1103/PhysRevE.105.064609
中图分类号
O35 [流体力学]; O53 [等离子体物理学];
学科分类号
070204 ; 080103 ; 080704 ;
摘要
Even though electrowetting-on-dielectric (EWOD) is a useful strategy in a wide array of biological and engi-neering processes with numerous droplet-manipulation applications, there is still a lack of complete theoretical interpretation on the dynamics of electrowetting. In this paper we present an effective theoretical model and use the Onsager variational principle to successfully derive general dynamic shape equations for electrowetting droplets in both the overdamped and underdamped regimes. It is found that the spreading and retraction dynamics of a droplet on EWOD substrates can be fairly well captured by our model, which agrees with previous experimental results very well in the overdamped regime. We also confirm that the transient dynamics of EW can be characterized by a timescale independent of liquid viscosity, droplet size, and applied voltage. Our model provides a complete fundamental explanation of EW-driven spreading dynamics, which is important for a wide range of applications, from self-cleaning to novel optical and digital microfluidic devices.
引用
收藏
页数:8
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